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Tomocube, Inc.
Realtime 3D Label-free Cell Imaging and Visualization
Tomocube, Inc.
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  • Products
    • HT-X1
    • HT series
    • TomoStudio™
    • TomoAnalysis™_oldpage
    • Accessories
    • Industrial HT
  • Technology
    • Holotomography
    • Tomocube AI
    • FAQ
  • Applications
    • Organoids Analysis
    • Lipid Quantification
    • Bacteria Analysis
    • Phase Separation
    • Cell Library
  • Resources
  • Publications
  • About
    • Media
    • News
    • Distributors
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  • Inquiry

News

Tomocube_Label-free 3D Live Cell Imaging_Holotomography_Development story

Developing the New HT-X1 – the Inside Story

Tomocube_Label-free 3D Live Cell Imaging_Holotomography_Hepatocyes incubated with nanoparticles

Tomocube Microscopes around the World

World’s First High-Resolution Holotomography Microscope with an Incoherent Light Source is here!

Tomocube_Label-free 3D Live Cell Imaging_Holotomography_Polyhydroxyalkanoates (PHAs)

New Understanding in the Development of Biodegradable Polymers Amid the Plastic Waste Crisis

Tomocube_Label-free 3D Live Cell Imaging_Holotomography_Metatastic Potential Identification in cancer cells

Novel 3D Imaging Method Provides JHU Scientists the Tool to Identify Metastatic Potential in Cancer Cells

Tomocube_Label-free 3D Live Cell Imaging_Holotomography_Distributors_Meyer

Tomocube to Enhance its Close Support for the US

Tomocube will join KSMCB 2022 in Busan, Korea

한국바이오칩학회 춘계학술대회 2022 Biochips in the Transition Period_banner

Tomocube will join KBCS 2022 Annual Spring Meeting in Busan, Korea

Tomocube_Label-free 3D Live Cell Imaging_Holotomography_Cell Bio Participation Announcement

Tomocube will join CELL BIO virtual 2021

Tomocube will join KSMCB 2021 in Jeju, Korea

Tomocube_Label-free 3D Live Cell Imaging_Holotomography_TomoAnalysis

Tomocube Holotomography Webinar: New Insgiht into single cell analysis, TomoAnalysis

Tomocube will join KOSEB 2021 in Jeju, Korea

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Color-coded projection of HT image

In order to improve the visualization of our 3D organoid structure in label-free imaging, we employed an adaptation of the Sobel image filter – a well-known image processing technique for accentuating edges in an image.

Specifically, we filtered the gradient images produced by the Sobel filter and color-coded them according to their depth. Subsequently, we projected the maximum value of the resulting colored gradient image in the z direction.

This methodology enabled us to gain a more detailed and informative representation of our 3D organoid structure.